Tweak how runtime-checked indexing works
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@ -333,7 +333,7 @@ indexUpdateRange rs f arr = indexSetRange rs (f $ arr !!.. rs) arr
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||| coordinates are out of bounds.
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export
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indexNB : Vect rk Nat -> Array {rk} s a -> Maybe a
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indexNB is arr = if and $ map delay $ zipWith (<) is (shape arr)
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indexNB is arr = if all id $ zipWith (<) is (shape arr)
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then Just $ index (getLocation' (strides arr) is) (getPrim arr)
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else Nothing
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@ -345,42 +345,47 @@ export %inline
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(!?) : Array {rk} s a -> Vect rk Nat -> Maybe a
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arr !? is = indexNB is arr
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||| Update the entry at the given coordinates using the function. The array is
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||| returned unchanged if the coordinate is out of bounds.
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||| Update the entry at the given coordinates using the function. `Nothing` is
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||| returned if the coordinates are out of bounds.
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export
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indexUpdateNB : Vect rk Nat -> (a -> a) -> Array {rk} s a -> Array s a
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indexUpdateNB : Vect rk Nat -> (a -> a) -> Array {rk} s a -> Maybe (Array s a)
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indexUpdateNB is f (MkArray ord sts s arr) =
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MkArray ord sts s (updateAt (getLocation' sts is) f arr)
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if all id $ zipWith (<) is s
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then Just $ MkArray ord sts s (updateAt (getLocation' sts is) f arr)
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else Nothing
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||| Set the entry at the given coordinates to the given value. The array is
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||| returned unchanged if the coordinate is out of bounds.
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||| Set the entry at the given coordinates using the function. `Nothing` is
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||| returned if the coordinates are out of bounds.
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export
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indexSetNB : Vect rk Nat -> a -> Array {rk} s a -> Array s a
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indexSetNB : Vect rk Nat -> a -> Array {rk} s a -> Maybe (Array s a)
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indexSetNB is = indexUpdateNB is . const
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||| Index the array using the given range of coordinates, returning a new array.
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||| Entries outside of the array's bounds are not included.
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||| If any of the given indices are out of bounds, then `Nothing` is returned.
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export
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indexRangeNB : (rs : Vect rk CRangeNB) -> Array s a -> Array (newShape s rs) a
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indexRangeNB : (rs : Vect rk CRangeNB) -> Array s a -> Maybe (Array (newShape s rs) a)
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indexRangeNB {s} rs arr with (viewShape arr)
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_ | Shape s =
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if validateShape s rs
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then
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let ord = getOrder arr
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sts = calcStrides ord s'
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in MkArray ord sts s'
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in Just $ MkArray ord sts s'
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(unsafeFromIns (product s') $
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map (\(is,is') => (getLocation' sts is',
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index (getLocation' (strides arr) is) (getPrim arr)))
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$ getCoordsList s rs)
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else Nothing
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where s' : Vect ? Nat
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s' = newShape s rs
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||| Index the array using the given range of coordinates, returning a new array.
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||| Entries outside of the array's bounds are not included.
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||| If any of the given indices are out of bounds, then `Nothing` is returned.
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||| This is the operator form of `indexRangeNB`.
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export %inline
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(!?..) : Array s a -> (rs : Vect rk CRangeNB) -> Array (newShape s rs) a
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(!?..) : Array s a -> (rs : Vect rk CRangeNB) -> Maybe (Array (newShape s rs) a)
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arr !?.. rs = indexRangeNB rs arr
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@ -121,7 +121,7 @@ namespace Strict
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cRangeToList (StartBound x) = Right $ range (cast x) n
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cRangeToList (EndBound x) = Right $ range 0 (cast x)
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cRangeToList (Bounds x y) = Right $ range (cast x) (cast y)
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cRangeToList (Indices xs) = Right $ map cast xs
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cRangeToList (Indices xs) = Right $ map cast $ nub xs
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cRangeToList (Filter p) = Right $ map cast $ filter p $ toList Fin.range
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@ -163,15 +163,28 @@ namespace NB
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cRangeNBToList s All = range 0 s
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cRangeNBToList s (StartBound x) = range x s
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cRangeNBToList s (EndBound x) = range 0 x
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cRangeNBToList s (Bounds x y) = range x (minimum y s)
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cRangeNBToList s (Indices xs) = filter (<s) xs
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cRangeNBToList s (Bounds x y) = range x y
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cRangeNBToList s (Indices xs) = nub xs
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cRangeNBToList s (Filter p) = filter p $ range 0 s
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export
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validateCRangeNB : Nat -> CRangeNB -> Bool
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validateCRangeNB s All = True
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validateCRangeNB s (StartBound x) = x < s
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validateCRangeNB s (EndBound x) = x <= s
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validateCRangeNB s (Bounds x y) = x < s && y <= s
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validateCRangeNB s (Indices xs) = all (<s) xs
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validateCRangeNB s (Filter p) = True
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||| Calculate the new shape given by a coordinate range.
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export
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newShape : Vect rk Nat -> Vect rk CRangeNB -> Vect rk Nat
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newShape = zipWith (length .: cRangeNBToList)
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export
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validateShape : Vect rk Nat -> Vect rk CRangeNB -> Bool
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validateShape = all id .: zipWith validateCRangeNB
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export
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getNewPos : Vect rk Nat -> Vect rk CRangeNB -> Vect rk Nat -> Vect rk Nat
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getNewPos = zipWith3 (\d,r,i => assert_total $
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